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- Intramolecular amide hydrolysis in N-methylmaleamic acid revisited
- Intramolecular amide hydrolysis in N-methylmaleamic acid revisited. Wu, Zhi Jian; Zhou, Shi Hong; Zhang, Si Yuan (Key Laboratory of Rare Earth Chemistry and Physics, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Peop. Rep. China). Chinese Chemical Letters, 13(11), 1100-1102 (English) 2002 Chinese Chemical Society. CODEN: CCLEE7. ISSN: 1001-8417.In this experiment, several chemicals are used like 6936-48-7 DOCUMENT TYPE: Journal CA Section: 22 (Physical Organic Chemistry) The intramol. amide hydrolysis of N-methylmaleamic acid have been revisited by use of d. functional theory and inclusion of solvent effects. The results indicate that concerted reaction mechanism is favored over stepwise reaction mechanism. This is in agreement with the previous theor. study.Chemical with cas number 6936-48-7 also plays role. Sovlent effects have significant influence on the reaction barrier. ..
- Intramolecular amide hydrolysis in N-methylmaleamic acid revisited
- Intramolecular amide hydrolysis in N-methylmaleamic acid revisited. Wu, Zhi Jian; Zhou, Shi Hong; Zhang, Si Yuan (Key Laboratory of Rare Earth Chemistry and Physics, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Peop. Rep. China). Chinese Chemical Letters, 13(11), 1100-1102 (English) 2002 Chinese Chemical Society. CODEN: CCLEE7. ISSN: 1001-8417.In this experiment, several chemicals are used like 6936-48-7 DOCUMENT TYPE: Journal CA Section: 22 (Physical Organic Chemistry) The intramol. amide hydrolysis of N-methylmaleamic acid have been revisited by use of d. functional theory and inclusion of solvent effects. The results indicate that concerted reaction mechanism is favored over stepwise reaction mechanism. This is in agreement with the previous theor. study.Chemical with cas number 6936-48-7 also plays role. Sovlent effects have significant influence on the reaction barrier. ..


